{"id":6160,"date":"2025-05-12T07:20:23","date_gmt":"2025-05-11T22:20:23","guid":{"rendered":"https:\/\/tuat-chemphys.net\/?p=6160"},"modified":"2025-09-02T06:31:14","modified_gmt":"2025-09-01T21:31:14","slug":"phd-%e5%85%ac%e8%81%b4%e4%bc%9a%e3%80%8c%e9%ab%98%e5%88%86%e5%ad%90%e3%82%92%e5%90%ab%e3%82%80%e3%82%b3%e3%83%ad%e3%82%a4%e3%83%89%e5%88%86%e6%95%a3%e6%b6%b2%e3%81%ae%e4%b9%be%e7%87%a5%e9%80%9f","status":"publish","type":"post","link":"https:\/\/tuat-chemphys.net\/?p=6160","title":{"rendered":"PhD \u516c\u8074\u4f1a Kinetics of Drying of Colloidal Dispersions with Polymers\u300c\u9ad8\u5206\u5b50\u3092\u542b\u3080\u30b3\u30ed\u30a4\u30c9\u5206\u6563\u6db2\u306e\u4e7e\u71e5\u901f\u5ea6\u8ad6\u300d2025\/5\/13"},"content":{"rendered":"\n<p>\u7530\u4e2d\u512a\u5f66\u6c0f(BASE\u5b66\u5e9c)\u306e\u535a\u58eb\u516c\u8074\u4f1a\u3092\u4e0b\u8a18\u306e\u901a\u308a\u306b\u958b\u50ac\u3057\u307e\u3059\u3002<\/p>\n\n\n\n<p>2025\u5e745\u670813\u65e5(\u706b) 8:45 &#8211; 10:15 @L1151 (11\u53f7\u99285F)<br>\u300c\u9ad8\u5206\u5b50\u3092\u542b\u3080\u30b3\u30ed\u30a4\u30c9\u5206\u6563\u6db2\u306e\u4e7e\u71e5\u901f\u5ea6\u8ad6\u300d<\/p>\n\n\n\n<p>We will be holding a doctoral thesis defense for Mr. Masahiko Tanaka (BASE Graduate School) as follows. If you are interested, please feel free to attend.<\/p>\n\n\n\n<p>Date: Tuesday, May 13, 2025, 8:45 &#8211; 10:15<\/p>\n\n\n\n<p>Location: L1151 (5th Floor, Building 11)<\/p>\n\n\n\n<p>Title: &#8220;Kinetics of Drying of Colloidal Dispersions Containing Polymers&#8221;<\/p>\n\n\n\n<p><\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Related News:<\/h2>\n\n\n\n<p><a href=\"https:\/\/www.tuat.ac.jp\/outline\/disclosure\/pressrelease\/2023\/20230609_01.html\">https:\/\/www.tuat.ac.jp\/outline\/disclosure\/pressrelease\/2023\/20230609_01.html<\/a><\/p>\n\n\n\n<p>\u72ed\u3044\u9699\u9593\u304b\u3089\u306e\u6c34\u306e\u84b8\u767a\u306f\u3001\u5c11\u91cf\u306e\u30dd\u30ea\u30de\u30fc\u6dfb\u52a0\u3067\u963b\u5bb3\u3055\u308c\u308b<\/p>\n\n\n\n<p>\u3000\u6771\u4eac\u8fb2\u5de5\u5927\u5b66\u5927\u5b66\u9662\u751f\u7269\u30b7\u30b9\u30c6\u30e0\u5fdc\u7528\u79d1\u5b66\u5e9c\u306e\u7530\u4e2d\u512a\u5f66\uff08\u535a\u58eb\u5f8c\u671f\u8ab2\u7a0b2\u5e74\uff09\u3068\u5de5\u5b66\u7814\u7a76\u9662\u5fdc\u7528\u5316\u5b66\u90e8\u9580\u306e\u7a32\u6fa4\u664b\u6559\u6388\u306f\u3001\u6db2\u4f53\u306e\u308a\u3068\u3057\u3066\u3082\u4f7f\u308f\u308c\u3066\u3044\u308b\u9ad8\u5206\u5b50\uff08\u30dd\u30ea\u30de\u30fc\uff09\u3092\u6dfb\u52a0\u3059\u308b\u3068\u3001\u6c34\u304c\u72ed\u3044\u9699\u9593\u304b\u3089\u84b8\u767a\u3059\u308b\u901f\u5ea6\u3092\u8457\u3057\u304f\u4f4e\u4e0b\u3055\u305b\u308b\u3053\u3068\u3092\u660e\u3089\u304b\u306b\u3057\u307e\u3057\u305f\u3002\u69d8\u3005\u306a\u3082\u306e\u3065\u304f\u308a\u3067\u7528\u3044\u3089\u308c\u308b\u56fa\u4f53\u7c92\u5b50\u3068\u30dd\u30ea\u30de\u30fc\u3092\u540c\u6642\u306b\u6df7\u305c\u305f\u5206\u6563\u6db2\u306e\u4e7e\u71e5\u3067\u306f\u3001\u7c92\u5b50\u9593\u306e\u72ed\u3044\u7a7a\u9699\u304b\u3089\u6c34\u304c\u84b8\u767a\u3057\u307e\u3059\u3002\u3053\u306e\u6210\u679c\u306f\u4e7e\u71e5\u5de5\u7a0b\u3067\u306e\u7c92\u5b50\u819c\u5f62\u6210\u306e\u5236\u5fa1\u306b\u5f79\u7acb\u3064\u3053\u3068\u304c\u671f\u5f85\u3055\u308c\u307e\u3059\u3002<br>\u8ad6\u6587\u540d\uff1aDrying kinetics of colloid-polymer suspensions confined in a two-dimensional geometry<br>\u8457\u8005\u540d\uff1aMasahiko Tanaka and Susumu Inasawa<br>URL\uff1ahttps:\/\/doi.org\/10.1016\/j.colsurfa.2023.131693<\/p>\n\n\n\n<p>\u73fe\u72b6<br>\u3000\u6c34\u306e\u4e2d\u306b\u6eb6\u3051\u305a\u306b\u6d6e\u904a\u3057\u3066\u3044\u308b\u76f4\u5f84100 nm\uff081mm\u306e1\u4e07\u5206\u306e1\uff09\u7a0b\u5ea6\u306e\u5fae\u7d30\u306a\u56fa\u4f53\u7c92\u5b50\uff08\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\uff09\u304c\u6c34\u306e\u84b8\u767a\u7b49\u306b\u3088\u3063\u3066\u5145\u586b\u3055\u308c\u308b\u3068\u3001\u7c92\u5b50\u306e\u9593\u306b10 nm\u7a0b\u5ea6\u306e\u9699\u9593\u304c\u751f\u3058\u3001\u3053\u306e\u9699\u9593\u304b\u3089\u3055\u3089\u306b\u6c34\u304c\u84b8\u767a\u3057\u3066\u3044\u304d\u307e\u3059\u3002\u8eab\u8fd1\u306a\u4f8b\u3067\u306f\u3001\u7802\u3084\u571f\u306b\u6c34\u3092\u6492\u304f\u3068\u3001\u30d0\u30e9\u30d0\u30e9\u3067\u3042\u3063\u305f\u7802\u7c92\u3084\u571f\u304c\u307e\u3068\u307e\u308a\u307e\u3059\u3002\u3053\u306e\u307e\u3068\u307e\u3063\u305f\u7802\u7c92\u3084\u571f\u306e\u5c0f\u3055\u306a\u7c92\u306e\u9593\u304b\u3089\u6c34\u306e\u84b8\u767a\u304c\u8d77\u3053\u308b\u3053\u3068\u306b\u4f3c\u3066\u3044\u307e\u3059\u3002\u3082\u306e\u3065\u304f\u308a\u3067\u306f\u7802\u3084\u571f\u306e\u7c92\u3088\u308a\u3082\u3055\u3089\u306b\u5c0f\u3055\u3044\u7c92\u5b50\u3092\u983b\u7e41\u306b\u7528\u3044\u307e\u3059\u3002\u3053\u306e\u6975\u3081\u3066\u72ed\u3044\u9699\u9593\u304b\u3089\u6c34\u304c\u3069\u306e\u3088\u3046\u306b\u84b8\u767a\u3057\u3066\u3044\u304f\u306e\u304b\u306b\u3064\u3044\u3066\u306f\u8907\u6570\u306e\u7814\u7a76\u4f8b\u304c\u3042\u308a\u307e\u3059\u3002\u3057\u304b\u3057\u3001\u3082\u306e\u3065\u304f\u308a\u3067\u306f\u3001\u56fa\u4f53\u7c92\u5b50\u306b\u30dd\u30ea\u30de\u30fc\u306a\u3069\u69d8\u3005\u306a\u4ed6\u306e\u6210\u5206\u3092\u52a0\u3048\u305f\u6eb6\u6db2\u3092\u4f7f\u7528\u3059\u308b\u3053\u3068\u304c\u591a\u304f\u3001\u6c34\u306b\u6eb6\u3051\u3066\u3044\u308b\u7269\u8cea\u304c\u3001\u7c92\u5b50\u9593\u306e\u72ed\u3044\u9699\u9593\u304b\u3089\u6c34\u304c\u84b8\u767a\u3059\u308b\u969b\u306b\u3069\u306e\u7a0b\u5ea6\u5f71\u97ff\u3059\u308b\u306e\u304b\u306b\u3064\u3044\u3066\u306f\u691c\u8a0e\u4f8b\u304c\u3042\u308a\u307e\u305b\u3093\u3067\u3057\u305f\u3002<\/p>\n\n\n\n<p>\u7814\u7a76\u6210\u679c<br>\u3000\u76f4\u5f84110 nm\u306e\u30b7\u30ea\u30ab\uff08SiO2\uff09\u7c92\u5b50\u304c\u5206\u6563\u3057\u305f\u6c34\u6eb6\u6db2\u306b\u5c11\u91cf\uff08\u4f53\u7a4d\u5206\u7387\u30671%\u672a\u6e80\uff09\u306e\u30dd\u30ea\u30de\u30fc\uff08\u30dd\u30ea\u30d3\u30cb\u30eb\u30a2\u30eb\u30b3\u30fc\u30eb*1\uff09\u3092\u6dfb\u52a0\u3057\u4e7e\u71e5\u3055\u305b\u308b\u3068\u3001\u6c34\u306e\u84b8\u767a\u901f\u5ea6\u306f\u6642\u9593\u306e\u7d4c\u904e\u3068\u3068\u3082\u306b\u521d\u671f\u306e1\/10\u7a0b\u5ea6\u307e\u3067\u4e0b\u304c\u308a\u307e\u3057\u305f\uff08\u56f31\u5de6\uff09\u3002\u3053\u308c\u306b\u5bfe\u3057\u3001\u30dd\u30ea\u30de\u30fc\u3092\u6dfb\u52a0\u3057\u306a\u3044\u7c92\u5b50\u5206\u6563\u6db2\u3067\u306f\u84b8\u767a\u901f\u5ea6\u306f\u307b\u3068\u3093\u3069\u5909\u308f\u308a\u307e\u305b\u3093\u3067\u3057\u305f\u3002\u4e7e\u71e5\u6761\u4ef6\u3092\u5909\u3048\u3066\u3001\u2460\u30dd\u30ea\u30de\u30fc\u6c34\u6eb6\u6db2\uff08\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u306a\u3057)\u3001\u2461\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2(\u30dd\u30ea\u30de\u30fc\u306a\u3057)\u304a\u3088\u3073\u2462\u30dd\u30ea\u30de\u30fc\u6dfb\u52a0\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2\u306e\u84b8\u767a\u901f\u5ea6\u3092\u6bd4\u8f03\u3059\u308b\u3068\u3001\u2462\u306e\u307f\u660e\u78ba\u306b\u84b8\u767a\u901f\u5ea6\u304c\u4f4e\u4e0b\u3059\u308b\u3053\u3068\u304c\u308f\u304b\u308a\u307e\u3057\u305f\uff08\u56f31\u53f3)\u3002\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u3068\u30dd\u30ea\u30de\u30fc\u304c\u5171\u5b58\u3059\u308b\u3053\u3068\u3067\u3001\u6c34\u306e\u84b8\u767a\u304c\u8457\u3057\u304f\u963b\u5bb3\u3055\u308c\u308b\u3053\u3068\u3092\u793a\u3059\u7d50\u679c\u3067\u3059\u3002<\/p>\n\n\n\n<p>\u4eca\u5f8c\u306e\u5c55\u958b<br>\u3000\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u306a\u3069\u5fae\u7d30\u306a\u7c92\u5b50\u304c\u5145\u586b\u3055\u308c\u305f\u819c\u306e\u5185\u90e8\u306b\u306f\u3001\u7121\u6570\u306e\u72ed\u3044\u7a7a\u9699\u304c\u5b58\u5728\u3057\u307e\u3059\uff08\u56f32\uff09\u3002\u3053\u3046\u3057\u305f\u72ed\u3044\u7a7a\u9699\u3067\u3042\u308b\u304b\u3089\u3053\u305d\u3001\u5c11\u91cf\u306e\u30dd\u30ea\u30de\u30fc\u304c\u6dfb\u52a0\u3055\u308c\u305f\u3060\u3051\u3067\u6c34\u306e\u84b8\u767a\u901f\u5ea6\u306b\u5927\u304d\u304f\u5f71\u97ff\u3059\u308b\u3053\u3068\u304c\u308f\u304b\u308a\u307e\u3057\u305f\u3002\u72ed\u3044\u7a7a\u9699\u5185\u306b\u3069\u306e\u3088\u3046\u306b\u30dd\u30ea\u30de\u30fc\u304c\u84c4\u7a4d\u3057\u3066\u3044\u304f\u306e\u304b\u3001\u6c34\u304c\u84b8\u767a\u3059\u308b\u904e\u7a0b\u3067\u30dd\u30ea\u30de\u30fc\u304c\u72ed\u3044\u7a7a\u9699\u3092\u3069\u306e\u3088\u3046\u306b\u79fb\u52d5\u3059\u308b\u306e\u304b\u3001\u306a\u3069\u3092\u4e39\u5ff5\u306b\u8ffd\u8de1\u3059\u308c\u3070\u7c92\u5b50\u819c\u5185\u90e8\u3067\u306e\u30dd\u30ea\u30de\u30fc\u84c4\u7a4d\u5206\u5e03\u3084\u6c34\u306e\u84b8\u767a\u901f\u5ea6\u306e\u5236\u5fa1\u304c\u53ef\u80fd\u306b\u306a\u308b\u3068\u671f\u5f85\u3067\u304d\u307e\u3059\u3002\u307e\u305f\u3001\u72ed\u3044\u7a7a\u9593\u5185\u3067\u30dd\u30ea\u30de\u30fc\u3068\u6c34\u304c\u5171\u5b58\u3059\u308b\u3053\u3068\u306e\u65b0\u305f\u306a\u52b9\u679c\u3092\u691c\u8a3c\u3059\u308b\u5b9f\u9a13\u7cfb\u3068\u3057\u3066\u3082\u6709\u52b9\u3067\u3059\u3002<\/p>\n\n\n\n<figure 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data-large-file=\"https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?fit=810%2C327&amp;ssl=1\" src=\"https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?resize=810%2C327&#038;ssl=1\" alt=\"\" class=\"wp-image-6161\" srcset=\"https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?resize=1024%2C413&amp;ssl=1 1024w, https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?resize=300%2C121&amp;ssl=1 300w, https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?resize=768%2C310&amp;ssl=1 768w, https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?resize=360%2C145&amp;ssl=1 360w, https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?w=1329&amp;ssl=1 1329w\" sizes=\"auto, (max-width: 810px) 100vw, 810px\" \/><figcaption class=\"wp-element-caption\">\u56f31\uff08\u5de6\uff09\u30dd\u30ea\u30de\u30fc\u3092\u6dfb\u52a0\u3057\u305f\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2\u306e\u84b8\u767a\u901f\u5ea6\u3002\u9752\u3001\u8d64\u3001\u7dd1\u306e\u8272\u306f\u3001\u6dfb\u52a0\u3057\u305f\u30dd\u30ea\u30de\u30fc\u306e\u5206\u5b50\u91cf\u304c\u305d\u308c\u305e\u308c\u7570\u306a\u308b\u3002\u307e\u305f\u3001\u25cb\u3001\u25c7\u3001\u25b3\u306f\u305d\u308c\u305e\u308c\u6dfb\u52a0\u3057\u305f\u30dd\u30ea\u30de\u30fc\u6fc3\u5ea6\u304c\u7570\u306a\u308b\u3053\u3068\u3092\u793a\u3059\u3002\u00d7\u304c\u30dd\u30ea\u30de\u30fc\u6dfb\u52a0\u306a\u3057\u306e\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2\u306e\u84b8\u767a\u901f\u5ea6\u3002\uff08\u53f3)\u25cb\uff1a\u30dd\u30ea\u30de\u30fc\u6c34\u6eb6\u6db2\uff08\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u306a\u3057)\u3001\u25c7\uff1a\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2\uff08\u30dd\u30ea\u30de\u30fc\u6dfb\u52a0\u306a\u3057)\u3001\u25b3\uff1a\u30dd\u30ea\u30de\u30fc\u3092\u6dfb\u52a0\u3057\u305f\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5206\u6563\u6db2\u3001\u306e\u84b8\u767a\u901f\u5ea6\u3002\u56f3\u306e\u53f3\u306b\u884c\u304f\u306b\u5f93\u3063\u3066\u3001\u4e7e\u71e5\u304c\u9032\u3093\u3067\u3044\u308b\u3053\u3068\u306b\u5bfe\u5fdc\u3059\u308b\u3002\u5de6\u30b0\u30e9\u30d5\u4e2d\u306e\u753b\u50cf\u306f\u3001\u5b9f\u969b\u306b\u5145\u586b\u3055\u308c\u305f\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u306e\u96fb\u5b50\u9855\u5fae\u93e1\u50cf\u3002\u7c92\u5b50\uff11\u500b\u306e\u76f4\u5f84\u306f110 nm\u3002<\/figcaption><\/figure>\n\n\n\n<p>Figure 1 (Left): Evaporation rate of colloidal particle dispersion with added polymer. The blue, red, and green colors indicate different molecular weights of the added polymer. Additionally, \u25cb, \u25c7, and \u25b3 represent different concentrations of the added polymer. \u00d7 indicates the evaporation rate of the colloidal particle dispersion without added polymer. Figure 1 (Right): \u25cb: Polymer aqueous solution (without colloidal particles), \u25c7: Colloidal particle dispersion (without added polymer), \u25b3: Colloidal particle dispersion with added polymer, showing the evaporation rate. As you move to the right in the figure, it corresponds to the progression of drying. The image in the left graph shows an electron microscope image of the actually filled colloidal particles. The diameter of a single particle is 110 nm.<\/p>\n\n\n\n<p><strong>Current Situation:<\/strong>&nbsp;When fine solid particles (colloidal particles) with a diameter of about 100 nm (1\/10,000th of a millimeter) that float without dissolving in water are packed due to water evaporation, gaps of about 10 nm form between the particles, and further water evaporates from these gaps. A familiar example is when water is sprinkled on sand or soil, causing the scattered sand grains or soil to clump together. This is similar to the evaporation of water from the small gaps between the clumped sand grains or soil. In manufacturing, particles even smaller than sand or soil grains are frequently used. There are several studies on how water evaporates from these extremely narrow gaps. However, in manufacturing, solutions containing solid particles often include various other components such as polymers, and there have been no studies on how substances dissolved in water affect the evaporation of water from the narrow gaps between particles.<\/p>\n\n\n\n<p><strong>Research Results:<\/strong>&nbsp;When a small amount (less than 1% by volume) of polymer (polyvinyl alcohol*1) is added to an aqueous solution with dispersed silica (SiO2) particles with a diameter of 110 nm and dried, the evaporation rate of water decreases to about 1\/10 of the initial rate over time (Figure 1, left). In contrast, the evaporation rate of the particle dispersion without added polymer hardly changes. Comparing the evaporation rates under different drying conditions: \u2460 polymer aqueous solution (without colloidal particles), \u2461 colloidal particle dispersion (without polymer), and \u2462 colloidal particle dispersion with added polymer, only \u2462 shows a clear decrease in evaporation rate (Figure 1, right). This result indicates that the coexistence of colloidal particles and polymer significantly inhibits water evaporation.<\/p>\n\n\n\n<p><strong>Future Developments:<\/strong>&nbsp;Inside membranes filled with colloidal particles and other fine particles, there are countless narrow gaps. It was found that even a small amount of added polymer significantly affects the evaporation rate of water due to these narrow gaps. By carefully tracking how the polymer accumulates within these narrow gaps and how it moves during the water evaporation process, it is expected to be possible to control the distribution of polymer accumulation and the evaporation rate of water within the particle membrane. Additionally, this serves as an effective experimental system to verify new effects of the coexistence of polymer and water in narrow spaces.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>\u300c\u9ad8\u5206\u5b50\u3092\u542b\u3080\u30b3\u30ed\u30a4\u30c9\u5206\u6563\u6db2\u306e\u4e7e\u71e5\u901f\u5ea6\u8ad6\u300dTitle: &#8220;Kinetics of Drying of Colloidal Dispersions Containing Polymers&#8221;<\/p>\n","protected":false},"author":1,"featured_media":6161,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"advanced_seo_description":"","jetpack_seo_html_title":"","jetpack_seo_noindex":false,"jetpack_post_was_ever_published":false,"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_publicize_message":"","jetpack_publicize_feature_enabled":true,"jetpack_social_post_already_shared":true,"jetpack_social_options":{"image_generator_settings":{"template":"highway","default_image_id":0,"font":"","enabled":false},"version":2}},"categories":[22],"tags":[14],"class_list":["post-6160","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-doctoral-thesis-","tag-advanced-materials-creation"],"jetpack_publicize_connections":[],"jetpack_featured_media_url":"https:\/\/i0.wp.com\/tuat-chemphys.net\/wp-content\/uploads\/2025\/05\/image.png?fit=1329%2C536&ssl=1","jetpack_sharing_enabled":true,"jetpack-related-posts":[{"id":7493,"url":"https:\/\/tuat-chemphys.net\/?p=7493","url_meta":{"origin":6160,"position":0},"title":"\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u3092\u542b\u3080\u9ad8\u5206\u5b50\u6eb6\u6db2\u306e\u300c\u4e7e\u71e5\u901f\u5ea6\u300d\u306f\u306a\u305c\u5909\u308f\u308b\uff1fWhy Do Polymer Solutions with Colloidal Particles Dry Differently?","author":"unet","date":"2026-02","format":false,"excerpt":"\u30b3\u30ed\u30a4\u30c9\u7c92\u5b50\u5165\u308a\u9ad8\u5206\u5b50\u6eb6\u6db2\u306f\u3001\u306a\u305c\u4e7e\u71e5\u304c\u65e9\u304f\u9045\u304f\u306a\u308b\uff1f \u305d\u306e\u201c\u81e8\u754c\u91cf\u201d\u3068\u666e\u904d\u7684\u3075\u308b\u307e\u3044\u3092\u89e3\u660e\uff01Why do polymer solutions with colloids dry differently? 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